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An approximate closed-form solution for lead lag damping of rotor blades in hoverSimple stability methods are used to derive an approximate, closed-form expression for the lead-lag damping of rotor blades in hover. Destabilizing terms are shown to be a result of two dynamic mechanisms. First, the destabilizing aerodynamic forces that can occur when blade lift is higher than a critical value are maximized when the blade motion is in a straight line equidistant from the blade chord and the average direction of the air flow velocity. This condition occurs when the Coriolis terms vanish and when the elastic coupling terms align the blade motion with this least stable direction. Second, the nonconservative stiffness terms that result from pitch-flap or pitch-lag coupling can add or subtract energy from the system depending upon whether the motion of the blade tip is clockwise or counterclockwise.
Document ID
19750014204
Acquisition Source
Legacy CDMS
Document Type
Technical Memorandum (TM)
Authors
Peters, D. A.
(NASA Ames Research Center Moffett Field, CA, United States)
Date Acquired
September 3, 2013
Publication Date
April 1, 1975
Subject Category
Aerodynamics
Report/Patent Number
A-6025
NASA-TM-X-62425
Report Number: A-6025
Report Number: NASA-TM-X-62425
Accession Number
75N22276
Distribution Limits
Public
Copyright
Work of the US Gov. Public Use Permitted.
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